Tableaux de Dose  ›  Cortagen
Bioregulator

Cortagen Guide & Tableau de Dose

A brain-cortex peptide bioregulator studied for neuroprotection.

Voiesubcutaneous
Cortagen — Tableau de dose
Chaque ligne citée
ObjectifDoseFréquenceDuréePreuveSource
Sciatic nerve regeneration 10 mcg 1x/day 10 days Preclinical PMID 11276314
Cardiac gene expression profiling / anti-aging 1 mcg 1x/day 5 days Preclinical PMID 15159690
À des fins de recherche et d'éducation uniquement. Pas un avis médical.
Comment Reconstituer Cortagen
U-100

Approche courante : reconstituer un flacon d'exemple de 5 mg de Cortagen avec de l'eau bactériostatique. Le tableau indique la concentration obtenue et le volume à prélever pour une dose de 10 mcg à trois volumes d'eau courants.

Eau BACConcentrationVolume / doseUnités (U-100)
1 mL5 mg/mL0 mL0.2
2 mL2.5 mg/mL0 mL0.4
3 mL1.67 mg/mL0.01 mL0.6

Les unités indiquées correspondent à une seringue à insuline U-100 (1 mL = 100 unités). Vérifiez toujours vos propres calculs avant de prélever.

Tailles de Flacon de Cortagen

Reconstitution résolue pour chaque taille de flacon courante :

What is Cortagen?

Cortagen is a tiny synthetic peptide — just four amino acids strung together (Ala-Glu-Asp-Pro) — that was designed to mimic the signals naturally produced by the brain's outer layer, the cerebral cortex. In the world of peptide science, it belongs to a family sometimes called cytogens or peptide bioregulators: short messenger molecules that tell specific tissues how to behave.[4] Researchers at the St. Petersburg Institute of Bioregulation and Gerontology synthesized Cortagen by analyzing the amino acid make-up of a natural brain extract called Cortexin, then recreating its core signaling sequence in the lab.[4] Because it is a research compound, Cortagen is studied in laboratory and preclinical settings — it is not approved for human medical use and this page is for educational purposes only.

How Cortagen Works

Think of Cortagen like a short text message sent to brain and nerve cells. The message essentially says: "Grow, repair, protect." Because it was built from brain-cortex chemistry, it appears to be recognized preferentially by brain and nerve tissue. In lab culture experiments, Cortagen stimulated the growth of rat brain-cortex tissue explants, while having much weaker effects on other tissue types tested at the same time.[5] This tissue-specific behavior is a hallmark of peptide bioregulators — each short peptide tends to "speak" most loudly to the tissue it was derived from.

At the molecular level, a microarray study looked at how Cortagen changes which genes are switched on or off. Researchers gave mice a five-day course of Cortagen injections, then scanned the activity of over 15,000 gene transcripts in heart tissue. They found 110 known genes with meaningfully altered expression — some turned up, some turned down — suggesting Cortagen influences a broad but specific network of biological pathways.[4] What those exact pathways do in nerve tissue is still an active area of investigation.

One thing researchers have noted is what Cortagen does not do: in immune-cell studies, it did not significantly stimulate thymocyte (immune cell) proliferation or the sphingomyelin signaling pathway the way some other short peptides do.[6] This selectivity hints that Cortagen's primary action is in neural tissue rather than the immune system.

What the Research Shows

Nerve Regeneration

Some of the most striking preclinical findings involve peripheral nerve repair. In one study, rats whose sciatic nerve had been surgically cut and sutured were given intramuscular Cortagen (10 µg/kg) for ten days afterward. The nerve fibers in the Cortagen group grew faster and conducted electrical signals 40% more efficiently than controls.[2] A follow-up paper explored the delayed effects of this treatment — looking at whether benefits persisted long after dosing stopped — and found evidence of lasting functional recovery.[1]

Brain Ischemia (Reduced Blood Flow)

Chronic brain ischemia means the brain isn't getting enough blood — and oxygen — over a long period. In a rodent model of this condition, both Cortagen and the related polypeptide Cortexin helped ischemic rats recover normal behavior more quickly. Just as importantly, both peptides reduced harmful lipid peroxidation (a type of cell damage caused by free radicals) and helped preserve the brain's natural antioxidant defenses.[3] The researchers concluded the findings support exploring these peptides as part of neuroprotective strategies.[3]

Gene Expression in the Heart

Because early human observations suggested Cortagen might affect cardiovascular as well as brain function, scientists used DNA microarray technology to map its effects on cardiac gene activity. Out of more than 15,000 transcripts screened, about 234 showed significant changes after Cortagen treatment — with the largest single gene increase reaching roughly 5.4-fold up-regulation.[4] This cross-tissue finding raises interesting questions about how widely peptide bioregulators ripple through the body.

What Cortagen Is Being Studied For

  • Peripheral nerve repair — accelerating regrowth and signal conduction after nerve injury[2]
  • Neuroprotection — shielding brain cells from damage caused by chronic low oxygen (ischemia)[3]
  • Antioxidant support in the brain — reducing oxidative stress markers during ischemic conditions[3]
  • Gene-level effects — understanding which molecular switches Cortagen flips in various tissues[4]
  • Tissue-specific bioregulation — mapping how cortex-derived peptides preferentially act on brain versus other tissues[5]

How Cortagen Is Dosed in Research

Preclinical studies have used intramuscular injection protocols, with one key rat study employing 10 µg/kg per day for a 10-day course following nerve injury.[2] However, dosing in research settings varies depending on the model, the outcome being measured, and the species involved. Rather than list every variable here, we've compiled the available research dosing information in the dosage chart on this page. You can also use the interactive calculator to work through weight-based conversions for preclinical reference purposes. Remember: these are research figures only, not clinical dosing guidance.

Mixing and Storing Cortagen

Cortagen, like most research peptides, typically arrives as a lyophilized (freeze-dried) powder in a sealed vial. To reconstitute it, researchers commonly add bacteriostatic water or sterile saline slowly down the side of the vial — never shaking, just gently swirling — until the powder dissolves completely. The resulting solution should be clear. Once reconstituted, it is generally stored in a refrigerator (around 2–8 °C) and used within a few weeks; for longer storage, keeping the unreconstituted powder in a freezer is preferred. Always check the supplier's documentation for specific storage recommendations, and handle all research compounds under appropriate laboratory conditions.

Sources

  1. The delayed effect of cortagen on the restoration of injured nerve function. — Doklady biological sciences : proceedings of the Academy of Sciences of the USSR, Biological sciences sections, 2002. PMID 12134478.
  2. Effect of tetrapeptide cortagen on regeneration of sciatic nerve. — Bulletin of experimental biology and medicine, 2000. PMID 11276314.
  3. [Cortexin and cortagen as correcting agents in functional and metabolic disorders in the brain in chronic ischemia]. — Eksperimental'naia i klinicheskaia farmakologiia, 2011. PMID 21476278.
  4. Elucidation of the effect of brain cortex tetrapeptide Cortagen on gene expression in mouse heart by microarray. — Neuro endocrinology letters, 2004. PMID 15159690.
  5. Tissue-specific effects of peptides. — Bulletin of experimental biology and medicine, 2001. PMID 11713572.
  6. Effects of short peptides on thymocyte blast transformation and signal transduction along the sphingomyelin pathway. — Bulletin of experimental biology and medicine, 2002. PMID 12420072.
Matériel Nécessaire

Un kit type de reconstitution et d'injection comprend :

  • Flacon(s) de peptide lyophilisé — assez pour tout le protocole
  • Eau bactériostatique pour la reconstitution
  • Seringues à insuline U-100 (une par injection)
  • Tampons d'alcool
  • Un conteneur pour objets tranchants pour une élimination sûre
Conservation, Manipulation et Injection

Conservation et manipulation

Le peptide lyophilisé est généralement conservé au réfrigérateur et à l'abri de la lumière ; une fois reconstitué avec de l'eau bactériostatique, il est habituellement réfrigéré à 2–8 °C et utilisé en quelques semaines. Suivez une technique aseptique pour éviter toute contamination, conformément aux recommandations de sécurité des injections du CDC.

Technique d'injection

Les injections sous-cutanées se font généralement dans la graisse de l'abdomen ou de la cuisse : nettoyez le site avec un tampon d'alcool, pincez la peau, insérez à l'angle recommandé et alternez les sites pour protéger les tissus. Consultez MedlinePlus pour un guide pas à pas de l'injection sous-cutanée.

Références générales de technique aseptique et d'injection à usage éducatif — elles ne sont spécifiques à aucun composé de recherche.

Cortagen FAQ

What is Cortagen?
Cortagen is a synthetic tetrapeptide (four amino acids: Ala-Glu-Asp-Pro) modeled on the chemistry of the brain's cerebral cortex. It belongs to a class of research compounds called peptide bioregulators, which are short signaling molecules studied for their ability to influence specific tissues. It was developed at the St. Petersburg Institute of Bioregulation and Gerontology.[4] It is a research-use-only compound, not a medical treatment.
How does Cortagen work?
Cortagen appears to act as a tissue-specific messenger, preferentially signaling brain-cortex and nerve cells to grow and repair. Lab culture experiments showed it stimulated brain-cortex tissue growth more strongly than other tissue types.[5] A gene-expression study found it altered activity in over 100 genes after just five days of treatment, suggesting it influences a broad network of cellular pathways.[4]
What is Cortagen used for in research?
Researchers are investigating Cortagen primarily for neuroprotection and nerve regeneration. Preclinical studies show it can speed up peripheral nerve regrowth after injury[2] and help protect brain tissue from damage during chronic reduced blood flow (ischemia), partly by reducing harmful oxidative stress.[3] Gene-expression studies are also probing its broader molecular effects.[4]
How is Cortagen dosed in research?
One well-cited rat study used 10 µg/kg per day via intramuscular injection for 10 days after sciatic nerve injury.[2] Dosing varies across studies and research models. See the dosage chart on this page for a compiled reference, and use the on-page calculator for weight-based conversions. This information is for research reference only — not medical dosing advice.
How do you reconstitute Cortagen?
Cortagen powder is typically dissolved by slowly adding bacteriostatic water or sterile saline to the vial — drizzling the liquid down the inside wall rather than squirting it directly onto the powder. Swirl gently; don't shake. The solution should turn clear. Store reconstituted Cortagen refrigerated (2–8 °C) and use within a few weeks. Unreconstituted powder lasts longer when kept frozen. Always follow supplier guidelines.
Is Cortagen safe?
Cortagen is a research compound with a limited published safety profile. Preclinical animal studies have not flagged major adverse effects at the doses tested, and its immune-cell studies showed it did not significantly stimulate thymocyte proliferation, suggesting low immune-stimulating activity.[6] However, robust human safety and toxicology data are not available in the public literature. It should only be handled by qualified researchers in appropriate laboratory settings — not used for self-treatment.